{"id":19184,"date":"2024-04-15T05:36:06","date_gmt":"2024-04-15T05:36:06","guid":{"rendered":"https:\/\/exam.pscnotes.com\/mcq\/?p=19184"},"modified":"2024-04-15T05:36:06","modified_gmt":"2024-04-15T05:36:06","slug":"when-operating-below-its-resonant-frequency-a-parallel-rlc-circuit-has-the-characteristics-of-a-a-parallel-rl-circuit-b-parallel-rc-circuit-c-parallel-rlc-circuit-operated-above-its-resonant-freq","status":"publish","type":"post","link":"https:\/\/exam.pscnotes.com\/mcq\/when-operating-below-its-resonant-frequency-a-parallel-rlc-circuit-has-the-characteristics-of-a-a-parallel-rl-circuit-b-parallel-rc-circuit-c-parallel-rlc-circuit-operated-above-its-resonant-freq\/","title":{"rendered":"When operating below its resonant frequency, a parallel RLC circuit has the characteristics of a: A. parallel RL circuit B. parallel RC circuit C. parallel RLC circuit operated above its resonant frequency D. purely resistive circuit E. None of the above"},"content":{"rendered":"<p>\r\n    <!-- Check if it's an AMP page -->\r\n            <!-- Non-AMP version -->\r\n        <div class=\"mcq-container\" data-quiz-id=\"quizState_6abbcd23629f3\">\r\n                                            <div class=\"option\" data-option-key=\"option1\" data-is-correct=\"true\">\r\n                    parallel RL circuit                <\/div>\r\n                                            <div class=\"option\" data-option-key=\"option2\" data-is-correct=\"false\">\r\n                    parallel RC circuit                <\/div>\r\n                                            <div class=\"option\" data-option-key=\"option3\" data-is-correct=\"false\">\r\n                    parallel RLC circuit operated above its resonant frequency                <\/div>\r\n                                            <div class=\"option\" data-option-key=\"option4\" data-is-correct=\"false\">\r\n                    purely resistive circuit E. None of the above                <\/div>\r\n                            \r\n            <!-- Feedback messages for non-AMP -->\r\n            <div class=\"feedback\" data-feedback=\"wrong\">Answer is Right!<\/div>\r\n            <div class=\"feedback\" data-feedback=\"right\">Answer is Wrong!<\/div>\r\n        <\/div>\r\n\r\n        <script>\r\n        document.addEventListener('DOMContentLoaded', function () {\r\n            var containers = document.querySelectorAll('.mcq-container');\r\n\r\n            containers.forEach(function(container) {\r\n                var options = container.querySelectorAll('.option');\r\n                var feedbackSelect = container.querySelector('[data-feedback=\"select\"]');\r\n                var feedbackWrong = container.querySelector('[data-feedback=\"wrong\"]');\r\n                var feedbackRight = container.querySelector('[data-feedback=\"right\"]');\r\n\r\n                options.forEach(function(option) {\r\n                    option.addEventListener('click', function() {\r\n                        var selectedOption = option.getAttribute('data-option-key');\r\n                        var isCorrect = option.getAttribute('data-is-correct') === 'true';\r\n\r\n                        \/\/ Remove previous selections\r\n                        options.forEach(function(opt) {\r\n                            opt.classList.remove('correct', 'incorrect');\r\n                        });\r\n\r\n                        \/\/ Add the correct\/incorrect class\r\n                        if (isCorrect) {\r\n                            option.classList.add('correct');\r\n                            feedbackRight.hidden = false;\r\n                            feedbackWrong.hidden = true;\r\n                        } else {\r\n                            option.classList.add('incorrect');\r\n                            feedbackRight.hidden = true;\r\n                            feedbackWrong.hidden = false;\r\n                        }\r\n\r\n                        \/\/ Hide select feedback\r\n                        feedbackSelect.hidden = true;\r\n                    });\r\n                });\r\n            });\r\n        });\r\n        <\/script>\r\n    \r\n    <!--more--><\/p>\n<p>The correct answer is: A. parallel RL circuit.<\/p>\n<p>When operating below its resonant frequency, a parallel RLC circuit has the characteristics of a parallel RL circuit. This is because the inductive reactance (XL) is greater than the capacitive reactance (XC). The inductive reactance causes the current to lag the voltage, while the capacitive reactance causes the current to lead the voltage. This results in a net inductive reactance, which causes the current to be less than <div class=\"youtube-subscribe-container\">\r\n        <a href=\"https:\/\/www.youtube.com\/channel\/UCNHT8lW-JmLC68rjBfZhdkg?sub_confirmation=1\" target=\"_blank\" class=\"youtube-subscribe-button\">\r\n            <span class=\"youtube-icon\">\r\n                <svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewBox=\"0 0 576 512\">\r\n                    <path d=\"M549.7 124.1c-6.3-23.7-24.8-42.3-48.3-48.6C458.8 64 288 64 288 64S117.2 64 74.6 75.5c-23.5 6.3-42 24.9-48.3 48.6-11.4 42.9-11.4 132.3-11.4 132.3s0 89.4 11.4 132.3c6.3 23.7 24.8 41.5 48.3 47.8C117.2 448 288 448 288 448s170.8 0 213.4-11.5c23.5-6.3 42-24.2 48.3-47.8 11.4-42.9 11.4-132.3 11.4-132.3s0-89.4-11.4-132.3zm-317.5 213.5V175.2l142.7 81.2-142.7 81.2z\"\/>\r\n                <\/svg>\r\n            <\/span>\r\n    <div class=\"telegram-channel-container\">\r\n        <a href=\"https:\/\/t.me\/pscnotes2025\" target=\"_blank\" class=\"telegram-channel-button\">\r\n            <span class=\"telegram-icon\">\r\n                <svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewBox=\"0 0 496 512\">\r\n                    <path fill=\"white\" d=\"M248,8C111,8,0,119,0,256s111,248,248,248s248-111,248-248S385,8,248,8z M362,177L320,367c-3,14-10,18-20,14l-56-41l-27,26 c-3,3-5,5-10,5l4-63L323,196c5-5-1-7-8-3l-98,62l-42-13c-9-3-10-9,2-14l162-63C351,160,365,164,362,177z\"\/>\r\n                <\/svg>\r\n            <\/span>\r\n            Join Our Telegram Channel\r\n        <\/a>\r\n    <\/div>         Subscribe on YouTube\r\n        <\/a>\r\n    <\/div> the current that would flow in a purely resistive circuit.<\/p>\n<p>Option B is incorrect because a parallel RC circuit has a capacitive reactance that is greater than the inductive reactance. This causes the current to lead the voltage, which is the opposite of what happens in a parallel RLC circuit.<\/p>\n<p>Option C is incorrect because a parallel RLC circuit operated above its resonant frequency has a capacitive reactance that is greater than the inductive reactance. This causes the current to lead the voltage, which is the opposite of what happens in a parallel RLC circuit operated below its resonant frequency.<\/p>\n<p>Option D is incorrect because a purely resistive circuit has no reactance. This means that the current and voltage are in phase, which is not the case in a parallel RLC circuit operated below its resonant frequency.<\/p>\n<p>Option E is incorrect because the answer is A.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Join Our Telegram Channel Subscribe on YouTube<\/p>\n","protected":false},"author":1,"featured_media":0,"comment_status":"closed","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[682],"tags":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO Premium plugin v22.2 (Yoast SEO v23.3) - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>When operating below its resonant frequency, a parallel RLC circuit has the characteristics of a: A. parallel RL circuit B. parallel RC circuit C. parallel RLC circuit operated above its resonant frequency D. purely resistive circuit E. 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